9509689

Security for cloud systems and virtualization cloud systems, mobile cloud systems and mobile virtualization cloud systems, and computer clusters and mobile device clusters

PublishedNovember 29, 2016
Assigneenot available in USPTO data we have
Technical Abstract

Patent Claims
18 claims

Legal claims defining the scope of protection, as filed with the USPTO.

1

1. A computer implemented method for securing data in a cloud storage environment, said method employing a cloud security system comprising at least one processor configured to execute computer program instructions for performing said method, said method comprising: receiving data of a plurality of types from a plurality of sources by said cloud security system; decoding said received data and storing said decoded data in one or more of a plurality of storage locations within said cloud storage environment by said cloud security system; allocating one or more of a plurality of security actions to be performed on said stored data in each of said one or more of said storage locations by said cloud security system; applying a plurality of security algorithms configured to perform said allocated one or more of said security actions on said stored data in said each of said one or more of said storage locations by said cloud security system, wherein said security algorithms comprise the Huffman coding algorithm, the Ruby code detection algorithm, the Theta-0 graph Tutte's algorithm, the double star snark algorithm, the Coxeter graph algorithm, the flower snark algorithm, the Blanusa snark algorithm, Peterson's algorithm, the Herschel algorithm, the Hamiltonian algorithm, and a mesh algorithm; and encoding resultant data obtained from said application of said security algorithms to said stored data with a security identifier in combination with one or more of authentication information of a user, biometric data of said user, and supplementary parameters by said cloud security system for facilitating secure access to said resultant data.

2

2. The computer implemented method of claim 1 , wherein said security actions comprise elimination of malware from said stored data, elimination of cookie information and history information associated with said stored data, elimination of a Trojan horse malware program in said stored data, elimination of viruses that piggyback on said stored data, and validating watermarking of a network and said storage locations.

3

3. The computer implemented method of claim 1 , further comprising identifying a source of malware in a network by said cloud security system using said security identifier, storage device information, and user information.

4

4. The computer implemented method of claim 1 , further comprising automatically removing electronic mail messages and files after a predetermined time interval by said cloud security system.

5

5. The computer implemented method of claim 1 , further comprising identifying a network leakage by said cloud security system.

6

6. The computer implemented method of claim 1 , wherein said supplementary parameters comprise a geographical location, room temperature, and external environmental temperature.

7

7. The computer implemented method of claim 1 , wherein said biometric data comprises a fingerprint pattern, an eyeball pattern, a palm veins pattern, a palm print, facial characteristics, and hand geometry.

8

8. The computer implemented method of claim 1 , further comprising connecting to and communicating with one or more of a plurality of external security systems by said cloud security system, wherein said external security systems comprise a firewall security system and a software security system.

9

9. A cloud security system for securing data in a cloud storage environment, said cloud security system comprising: a hardware processor executes the instruction to implement the modules; a non-transitory computer readable storage medium configured to store computer program instructions defined by modules of said cloud security system; at least one processor communicatively coupled to said non-transitory computer readable storage medium, said at least one processor configured to execute said defined computer program instructions for implementing said modules of said cloud security system; and said modules of said cloud security system comprising: a data reception module configured to receive data of a plurality of types from a plurality of sources; a decoder configured to decode said received data and store said decoded data in one or more of a plurality of storage locations within said cloud storage environment; an allocation module configured to allocate one or more of a plurality of security actions to be performed on said stored data in each of said one or more of said storage locations; a security action module configured to apply a plurality of security algorithms configured to perform said allocated one or more of said security actions on said stored data in said each of said one or more of said storage locations, wherein said security algorithms comprise the Huffman coding algorithm, the Ruby code detection algorithm, the Theta-0 graph Tutte's algorithm, the double star snark algorithm, the Coxeter graph algorithm, the flower snark algorithm, the Blanusa snark algorithm, Peterson's algorithm, the Herschel algorithm, the Hamiltonian algorithm, and a mesh algorithm; and an encoder configured to encode resultant data obtained from said application of said security algorithms to said stored data with a security identifier in combination with one or more of authentication information of a user, biometric data of said user, and supplementary parameters for facilitating secure access to said resultant data.

10

10. The cloud security system of claim 9 , wherein said security actions comprise elimination of malware from said stored data, elimination of cookie information and history information associated with said stored data, elimination of a Trojan horse malware program in said stored data, elimination of viruses that piggyback on said stored data, and validating watermarking of a network and said storage locations.

11

11. The cloud security system of claim 9 , wherein said security action module is further configured to identify a source of malware in a network using said security identifier, storage device information, and user information.

12

12. The cloud security system of claim 9 , wherein said security action module is further configured to automatically remove electronic mail messages and files after a predetermined time interval.

13

13. The cloud security system of claim 9 , wherein said security action module is further configured to identify a network leakage.

14

14. The cloud security system of claim 9 , wherein said supplementary parameters comprise a geographical location, room temperature, and external environmental temperature.

15

15. The cloud security system of claim 9 , wherein said biometric data comprises fingerprint pattern, an eyeball pattern, a palm veins pattern, a palm print, facial characteristics, and hand geometry.

16

16. The cloud security system of claim 9 configured to connect to and communicate with one or more of a plurality of external security systems, wherein said external security systems comprise a firewall security system and a software security system.

17

17. A computer program product comprising a non-transitory computer readable storage medium, said non-transitory computer readable storage medium storing computer program codes that comprise instructions executable by at least one processor, said computer program codes comprising: a first computer program code for receiving data of a plurality of types from a plurality of sources; a second computer program code for decoding said received data; a third computer program code for storing said decoded data in one or more of a plurality of storage locations within said cloud storage environment; a fourth computer program code for allocating one or more of a plurality of security actions to be performed on said stored data in each of said one or more of said storage locations; a fifth computer program code for applying a plurality of security algorithms to perform said allocated one or more of said security actions on said stored data in said each of said one or more of said storage locations, wherein said security algorithms comprise the Huffman coding algorithm, the Ruby code detection algorithm, the Theta-0 graph Tutte's algorithm, the double star snark algorithm, the Coxeter graph algorithm, the flower snark algorithm, the Blanusa snark algorithm, Peterson's algorithm, the Herschel algorithm, the Hamiltonian algorithm, and a mesh algorithm, and wherein said security actions comprise elimination of malware from said stored data, elimination of cookie information and history information associated with said stored data, elimination of a Trojan horse malware program in said stored data, elimination of viruses that piggyback on said stored data, and validating watermarking of a network and said storage locations; and a sixth computer program code for encoding resultant data obtained from said application of said security algorithms to said stored data with a security identifier in combination with one or more of authentication information of a user, biometric data of said user, and supplementary parameters for facilitating secure access to said resultant data.

18

18. The computer program product of claim 17 , further comprising: a seventh computer program code for identifying a source of malware in a network using said security identifier, storage device information, and user information; an eighth computer program code for automatically removing electronic mail messages and files after a predetermined time interval; and a ninth computer program code for identifying a network leakage.

Patent Metadata

Filing Date

Unknown

Publication Date

November 29, 2016

Inventors

Victoria Kien Man Teng
Robert Kien Fai Teng
Joshua Hanson Tsui-Teng
Matthew Tsui-Teng

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Security for cloud systems and virtualization cloud systems, mobile cloud systems and mobile virtualization cloud systems, and computer clusters and mobile device clusters — Victoria Kien Man Teng | Patentable